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Multi-Loop Model Reference Proportional Integral Derivative Controls: Design and Performance Evaluations

机译:多环模型参考比例积分衍生控制:设计和性能评估

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摘要

Due to unpredictable and fluctuating conditions in real-world control system applications, disturbance rejection is a substantial factor in robust control performance. The inherent disturbance rejection capacity of classical closed loop control systems is limited, and an increase in disturbance rejection performance of single-loop control systems affects the set-point control performance. Multi-loop control structures, which involve model reference control loops, can enhance the inherent disturbance rejection capacity of classical control loops without degrading set-point control performance; while the classical closed Proportional Integral Derivative (PID) control loop deals with stability and set-point control, the additional model reference control loop performs disturbance rejection control. This adaptive disturbance rejection, which does not influence set-point control performance, is achieved by selecting reference models as transfer functions of real control systems. This study investigates six types of multi-loop model reference (ML-MR) control structures for PID control loops and presents straightforward design schemes to enhance the disturbance rejection control performance of existing PID control loops. For this purpose, linear and non-linear ML-MR control structures are introduced, and their control performance improvements and certain inherent drawbacks of these structures are discussed. Design examples demonstrate the benefits of the ML-MR control structures for disturbance rejection performance improvement of PID control loops without severely deteriorating their set-point performance.
机译:由于现实世界控制系统应用中不可预测和波动的情况,干扰抑制是鲁棒控制性能的重要因素。经典闭环控制系统的固有干扰抑制容量有限,单环控制系统的干扰性能的增加会影响设定点控制性能。多环控制结构涉及模型参考控制环,可以增强经典控制环的固有干扰抑制容量,而不会降低设定点控制性能;虽然经典闭合的比例积分衍生物(PID)控制回路处理稳定性和设定点控制,但是附加模型参考控制回路执行干扰抑制控制。通过选择参考模型作为实际控制系统的传递函数来实现这种自适应扰动抑制,这不会影响设定点控制性能。本研究研究了用于PID控制环路的六种类型的多环模型参考(ML-MR)控制结构,并提高了现有PID控制环路的干扰抑制控制性能的简单设计方案。为此目的,介绍了线性和非线性ML-MR控制结构,讨论了它们的控制性能改进和这些结构的某些固有的缺点。设计示例展示了ML-MR控制结构的效果,用于PID控制环路的干扰性能改善,而不会严重降低其设定点性能。

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